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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 21, 1992 - Issue 3
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Original Articles

CONJUGATE CONDUCTION AND LAMINAR MIXED CONVECTION IN VERTICAL PIPES FOR UPWARD FLOW AND UNIFORM WALL HEAT FLUX

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Pages 313-332 | Received 29 May 1991, Accepted 16 Jul 1991, Published online: 13 Jul 2010

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Izuchukwu F. Okafor, Jaco Dirker & Josua P. Meyer. (2019) Asymmetrical Non-Uniform Heat Flux Distributions For Laminar Flow Heat Transfer With Mixed Convection In a Horizontal Circular Tube. Heat Transfer Engineering 40:1-2, pages 109-127.
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Chii-Dong Ho, Yi-Chin Chen, Hsuan Chang & Shung-Wen Kang. (2013) Heat transfer modeling of conjugated Graetz problems in double-pass parallel-plate heat exchangers under asymmetric wall temperatures. Journal of the Chinese Institute of Engineers 36:5, pages 647-657.
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Abdeslam Omara & Said Abboudi. (2007) Numerical Analysis of Transient Conjugated Downward Laminar Mixed Convection in a Vertical Pipe. Numerical Heat Transfer, Part A: Applications 51:3, pages 225-247.
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Cha'o-Kuang Chen, Li-Wen Wu & Yue-Tzu Yang. (2006) Comparison of Whole-Domain and Sequential Algorithms for Function Specification Method in the Inverse Heat Transfer Problem of Laminar Convective Pipe Flow. Numerical Heat Transfer, Part A: Applications 50:10, pages 927-947.
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H. Nesreddine, N. Galanis & C. T. Nguyen. (1998) EFFECTS OF AXIAL DIFFUSION ON LAMINAR HEAT TRANSFER WITH LOW PÉ CLET NUMBERS IN THE ENTRANCE REGION OF THIN VERTICAL TUBES. Numerical Heat Transfer, Part A: Applications 33:3, pages 247-266.
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Tien-Mo Shih, M. M. Ohadi & Wei Liu. (1996) LITERATURE SURVEY ON NUMERICAL HEAT TRANSFER (1992–1993). Numerical Heat Transfer, Part A: Applications 29:5, pages 441-484.
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F. Moukalled, M. Darwish & S. Acharya. (1995) INFLUENCE OF WALL CONDUCTION ON MIXED CONVECTION HEAT TRANSFER IN EXTERNALLY FINNED PIPES. Numerical Heat Transfer, Part A: Applications 28:2, pages 157-173.
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Wei Gao, Mahdi Abdi-khanghah, Mahyar Ghoroqi, Amin Daryasafar & Mitra Lavasani. (2018) Flow reversal of laminar mixed convection for supercritical CO 2 flowing vertically upward in the entry region of asymmetrically heated annular channel. The Journal of Supercritical Fluids 131, pages 87-98.
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Antigoni Kleanthous & Robert A. Van Gorder. (2017) Heat and mass transfer within a vertical pipe with a surface heating element of variable size. International Communications in Heat and Mass Transfer 85, pages 70-75.
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Chii-Dong Ho, Gwo-Geng Lin, Cheng-Yi Lin & Li-Yang Jen. (2017) Analytical and experimental studies for power-law fluids in a double-pass parallel-plate heat exchanger under asymmetric isotherm conditions. International Journal of Heat and Mass Transfer 106, pages 1242-1250.
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G. Yang & J.Y. Wu. (2015) Conjugate mixed convection in the entrance region of a symmetrically heated vertical channel with thick walls. International Journal of Thermal Sciences 98, pages 245-254.
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M. Goodarzi & S. Mazharmanesh. (2013) Heat transfer enhancement in parallel-plate double-pass heat exchanger using sinusoidal separating plate. International Journal of Thermal Sciences 72, pages 115-124.
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Esmail M.A. Mokheimer. (2010) Parametric analysis of entropy generation due to laminar developing mixed convection between differentially heated isothermal vertical parallel plates. International Journal of Numerical Methods for Heat & Fluid Flow 20:8, pages 941-971.
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Wen-Lih Chen & Yu-Ching Yang. (2010) Inverse estimation for unknown fouling-layer profiles with arbitrary geometries on the inner wall of a forced-convection duct. International Journal of Thermal Sciences 49:1, pages 86-98.
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Gilles Desrayaud & Guy Lauriat. (2009) Flow reversal of laminar mixed convection in the entry region of symmetrically heated, vertical plate channels. International Journal of Thermal Sciences 48:11, pages 2036-2045.
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C.‐D. Ho, P.‐C. Lee & J.‐W. Tu. (2009) Mass Transfer Enhancement in Double‐Pass, Parallel‐Plate Mass Exchangers under Asymmetric Wall Fluxes. Chemical Engineering & Technology 32:10, pages 1567-1577.
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Chii-Dong Ho, Wei-Zum Chen & Jr-Wei Tu. (2009) Asymmetric wall heat fluxes boundary conditions in double-pass parallel-plate heat exchangers. International Journal of Heat and Mass Transfer 52:15-16, pages 3555-3563.
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Yu-Ching Yang & Wen-Lih Chen. (2009) An iterative regularization method in simultaneously estimating the inlet temperature and heat-transfer rate in a forced-convection pipe. International Journal of Heat and Mass Transfer 52:7-8, pages 1928-1937.
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Chii-Dong Ho, Jr-Wei Tu & Chih-Ming Yang. (2009) Conjugated heat transfer in double-pass laminar counterflow concentric-tube heat exchangers with sinusoidal wall fluxes. International Journal of Heat and Mass Transfer 52:1-2, pages 45-55.
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Chii-Dong Ho, Jr-Wei Tu, Shih-Cheng Yeh & Jia-Jan Guo. (2008) Heat-transfer efficiency improvement of double-pass concentric circular heat exchangers under uniform wall fluxes. International Communications in Heat and Mass Transfer 35:7, pages 828-832.
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Hussein A. Mohammed. (2008) Laminar mixed convection heat transfer in a vertical circular tube under buoyancy-assisted and opposed flows. Energy Conversion and Management 49:8, pages 2006-2015.
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Cha’o-Kuang ChenLi-Wen WuYue-Tzu Yang. (2008) Proposed Modification to Whole Domain Function Specification Method to Improve Accuracy of Its Estimations. Journal of Heat Transfer 130:5.
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Ton Hoang Mai, Catalin Viorel Popa & Omar Kholai. (2008) Combined effects of the inlet temperature and the wall thermal capacitance on the laminar mixed convection in a vertical pipe. International Journal of Numerical Methods for Heat & Fluid Flow 18:1, pages 83-101.
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Chii-Dong Ho, Yu-Jui Chuang & Jr-Wei Tu. (2007) Double-pass flow heat transfer in a parallel-plate channel for improved device performance under uniform heat fluxes. International Journal of Heat and Mass Transfer 50:11-12, pages 2208-2216.
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Hussein A. Mohammed & Yasin K. Salman. (2007) Combined natural and forced convection heat transfer for assisting thermally developing flow in a uniformly heated vertical circular cylinder. International Communications in Heat and Mass Transfer 34:4, pages 474-491.
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Cha’o-Kuang Chen, Li-Wen Wu & Yue-Tzu Yang. (2006) Estimation of Time-Varying Inlet Temperature and Heat Flux in Turbulent Circular Pipe Flow. Journal of Heat Transfer 128:1, pages 44-52.
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M. Ouzzane & N. Galanis. (2001) Numerical Analysis Of Mixed Convection In Inclined Tubes With External Longitudinal Fins. Solar Energy 71:3, pages 199-211.
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Mohamed Ouzzane & Nicolas Galanis. (1999) Effets de la conduction pariétale et de la répartition du flux thermique sur la convection mixte près de l'entrée d'une conduite inclinée. International Journal of Thermal Sciences 38:7, pages 622-633.
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P. Lin & Y. Jaluria. (1998) Conjugate thermal transport in the channel of an extruder for non-newtonian fluids. International Journal of Heat and Mass Transfer 41:21, pages 3239-3253.
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G Laplante & M.A Bernier. (1997) Convection mixte défavorable et conjuguée dans un tube vertical. International Journal of Heat and Mass Transfer 40:15, pages 3527-3536.
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P. Lin & Y. Jaluria. (2004) Conjugate transport in polymer melt flow through extrusion dies. Polymer Engineering & Science 37:9, pages 1582-1595.
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Shigeru Mori, Masahiro Tsuji, Kenji Takahashi, Akira Tanimoto & Mikio Sakakibara. (1994) Coupling of laminar flow heat transfer in a vertical circular tube with external free convection. The Chemical Engineering Journal and the Biochemical Engineering Journal 55:3, pages 103-114.
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M. A. Bernier & B. R. Baliga. (1994) Comparison of one-dimensional models and a 1-D/2-D model for closed-loop thermosyphons with vertical heat transfer sectionsVergleich eindimensionaler Modelle mit einem 1-D/2-D Modell zur Berechnung geschlossener Thermosiphonkreisläufe mit vertikalen Wärmeübergangsabschnitten. Wärme- und Stoffübertragung 29:5, pages 309-317.
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M.A. Bernier & B.R. Baliga. (1992) A 1-D/2-D model and experimental results for a closed-loop thermosyphon with vertical heat transfer sections. International Journal of Heat and Mass Transfer 35:11, pages 2969-2982.
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M.A. Bernier & B.R. Baliga. (1992) Visualization of upward mixed-convection flows in vertical pipes using a thin semitransparent gold-film heater and dye injection. International Journal of Heat and Fluid Flow 13:3, pages 241-249.
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